Synthesis of LDH-MgAl and LDH-MgFe composites for the efficient removal of the antibiotic from water

被引:0
作者
Manzar, Mohammad Saood [1 ]
Palaniandy, Puganeshwary [2 ]
Georgin, Jordana [3 ]
Franco, Dison Stracke Pfingsten [3 ]
Zubair, Mukarram [1 ]
Muazu, Nuhu Dalhat [1 ]
Faisal, Wamda [1 ]
El Messaoudi, Noureddine [4 ]
机构
[1] Department of Environmental Engineering, College of Engineering, Imam Abdulrahman Bin Faisal University, Dammam
[2] School of Civil Engineering, Universiti Sains Malaysia, George Town, Penang
[3] Department of Civil and Environmental, Universidad de La Costa, CUC, Calle 58 # 55–66, Atlántico, Barranquilla
[4] Laboratory of Applied Chemistry and Environment, Faculty of Sciences, Ibn Zohr, University, Agadir
关键词
Adsorption; Composite; LDH-MgAl; LDH-MgFe; Tetracycline;
D O I
10.1007/s11356-024-34837-y
中图分类号
学科分类号
摘要
In this study, novel lamellar double hydroxide composites (LDH-MgAl and LDH-MgFe) were synthesized at different metal salt ratios (1:1 to 3:1) and fully characterized using various techniques such as XRD, FTIR, SEM, EDS, and TGA. The resulting LDHs demonstrated a high affinity for efficiently removing tetracycline (TC) antibiotic from water, particularly at a moderate molar ratio of 3:1. This ratio exhibited improved structural characteristics, resulting in better TC uptake from water. The improved performance was supported by the increased abundance of surface functional groups (OH, NO3, CO32−, C–O–C, Fe–O, and Al–O–Al). The TGA analysis established the high stability of the LDHs when subjected to high temperatures. The kinetics of TC adsorption onto LDH fitted with the PSO (R2 = 0.935–0.994) and Avrami (R2 = 0.9528–0.9824) models, while the equilibrium data fitted the Liu and Langmuir isotherm models, with maximum monolayer adsorption capacities of 101.1 mg g−1 and 70.83 mg g−1, respectively—significantly higher than many reported values in the literature. The positive values of ΔH0 and ΔS0 indicate an endothermic process, with TC removal mechanisms influenced by physical interactions, such as hydrogen bonding, electrostatic interaction, and π-cation with the surface functional groups of the LDH adsorbents. These results suggest that LDH-MgAl and LDH-MgFe are promising adsorbents for the removal of TC from water. Graphical Abstract: (Figure presented.) © The Author(s), under exclusive licence to Springer-Verlag GmbH Germany, part of Springer Nature 2024.
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页码:55577 / 55596
页数:19
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共 84 条
[1]  
Ahmed M.B., Zhou J.L., Ngo H.H., Guo W., Adsorptive removal of antibiotics from water and wastewater: progress and challenges, Sci Total Environ, 532, pp. 112-126, (2015)
[2]  
Arslan D.S., Ertap H., Senol Z.M., Et al., Preparation of polyacrylamide titanium dioxide hybrid nanocomposite by direct polymerization and its applicability in removing crystal violet from aqueous solution, J Polym Environ, 32, pp. 573-587, (2024)
[3]  
Avrami M., Kinetics of phase change. I: General theory, J Chem Phys, 7, pp. 1103-1112, (1939)
[4]  
Benicio L.P.F., Eulalio D., de Moura Guimaraes L., Et al., Layered double hydroxides as hosting matrices for storage and slow release of phosphate analyzed by stirred-flow method, Mater Res, 21, (2018)
[5]  
Blaisi N.I., Zubair M., Ihsanullah, Et al., Date palm ash-MgAl-layered double hydroxide composite: sustainable adsorbent for effective removal of methyl orange and eriochrome black-T from aqueous phase, Environ Sci Pollut Res, 25, pp. 34319-34331, (2018)
[6]  
Cao Y., Fang S., Chen K., Et al., Insight into the preparation of MgAl-layered double hydroxide (LDH) intercalated with nitrates and chloride adsorption ability study, Appl Sci, 12, pp. 1-15, (2022)
[7]  
Chen H., Jing L., Teng Y., Wang J., Characterization of antibiotics in a large-scale river system of China: occurrence pattern, spatiotemporal distribution and environmental risks, Sci Total Environ, 618, pp. 409-418, (2018)
[8]  
Chen X., Jiang X., Yin C., Et al., Facile fabrication of hierarchical porous ZIF-8 for enhanced adsorption of antibiotics, J Hazard Mater, 367, pp. 194-204, (2019)
[9]  
Cheng D.L., Ngo H.H., Guo W.S., Et al., Bioprocessing for elimination antibiotics and hormones from swine wastewater, Sci Total Environ, 621, pp. 1664-1682, (2018)
[10]  
Cigeroglu Z., Kazan-Kaya E.S., El Messaoudi N., Et al., Remediation of tetracycline from aqueous solution through adsorption on g-C3N4-ZnO-BaTiO3 nanocomposite: optimization, modeling, and theoretical calculation, J Mol Liq, 369, (2023)